• 제목/요약/키워드: Local ventilation system

검색결과 107건 처리시간 0.023초

터널내 자연환기력(NVP) 적용방안 연구 (A study on applications of the natural ventilation pressure(NVP) in local tunnels)

  • 김효규;유지오;이창우
    • 한국터널지하공간학회 논문집
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    • 제16권3호
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    • pp.269-285
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    • 2014
  • 터널내의 NVP(자연환기력)은 환기 및 방재시스템 설계시 중요성에도 불구하고, 측정 및 정량화의 어려움으로 인해 관련 연구가 극히 제한적이었다. 본 연구에서는 터널 환기시스템의 최적 설계를 위하여 지형 및 기상학적 자료를 이용한 국내 터널내 작용하는 NVP을 정량화함으로써 궁극적으로는 정량화 및 적용 설계지침의 마련을 목적으로 하였다. 국내 주요 노선상의 22개 터널을 분석대상으로 하였다. 기상자료에 기초한 NVP의 범위는 20~140 Pa이며, 지형자료에 기초한 경우는 20~200 Pa로 추정되었다. 터널내 제트팬의 대당 승압력이 10~15 Pa인 점을 감안하면, NVP는 제트팬 1대 이상의 영향력을 가지고 있음을 의미하므로 터널의 경제적이고 안전한 설계를 위해서는 NVP의 정량화 및 적용이 반드시 필요함을 알 수 있다. NVP의 크기 결정에 영향을 미치는 변수중, 터널 입출구 갱구사이의 기압차가 가장 중요한 변수이며 기여도는 평균 61%, 그리고 외풍에 의한 갱구면 작용 압력이 22%, 공기 밀도차에 의한 굴뚝효과가 17%의 기여도를 보인다.

심부 광산의 효율적 환기 시스템에 관한 연구 (A Study of Efficient Ventilation System in Deep Mines)

  • 송두환;김윤광;김택수;김상환
    • 청정기술
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    • 제22권3호
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    • pp.168-174
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    • 2016
  • 석탄 광산의 심부화 및 운행갱도의 증가로 인한 온도상승으로 작업환경이 점차 악화되는 광산에서 작업환경의 개선을 위하여 A광업소를 대상으로 통기평가를 하였으며 갱내의 통기 효율을 증가시키기 위하여 작업장의 온도 저하를 위한 선풍기 통기 방식에 대해 유동해석 프로그램을 이용하여 통기방식에 따른 운반갱도의 온도분포를 해석하였다. 연구결과 A 광업소의 소요환기량은 17,831 m3 min-1으로 산출되었으며, 실제 총 입기량은 16,474 m3 min-1로 환기량이 1,357 m3 min-1 부족한 것으로 나타났고 운반갱도에서 작업장까지의 온도는 송기식 통기보다 배기식 통기방식이 2~3℃ 낮게 분포하였다. 운반갱도에서 작업장까지의 길이가 긴 경우 송기식 보다는 배기식 통기방식을 운용 하는 것이 더욱 효과적일 것이다.

국소환기 설계의 전산화에 관한 연구 (A Study of Local Ventilation Design on PC Programm)

  • 윤명조
    • 한국산업보건학회지
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    • 제3권2호
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    • pp.213-226
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    • 1993
  • The purpose of this study is to computerize the design of single source for a duct work system which is essential for the improvement of working places. There are different types of hood, such as general hood, push pull hood and canopy hood. And out of these three types, general hood and canopy hood were used as subjects of this study. The software used here was Quattro Pro 123 programm, and the hardware was IBM PS/SX(type 5510-SK4 S/N 83-05164). And the results are tabulated in

    and
    . All of the hazardous factors of working places, except for physical factors, such as noise, vibration, illumination and etc, are control measurement related. In order words, workiong places that have problems with toxic gas, mist, fume, dust, odors, biological factors or wetness can be improved by means of the local ventilation design. However, the reqires very complicate processes, and in the case of canopy hood, particularly, one runs into difficulties due to frequent discrepancies generated from calculations through many processes. Recently, progress of the computer hardware technics has been dazzling, and also the software is development rapidly. As proven in the results of this study, it is good that designs for industrial ventilation systems are readily available for easy use. It is hopeful that young scholars will develop easier and quicker methods for local ventilation designs in the future.

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  • Analysis on the Age of Air and the Air Change Effectiveness of the Personal Environmental Module System in Intelligent Buildings

    • Cho, Dongwoo
      • Architectural research
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      • 제1권1호
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      • pp.47-53
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      • 1999
    • An interesting of desktop air-conditioning system is the Personal Environmental Module(PEM) System. The PEM system allows the occupant to choose the desired temperature, air volume and direction of the discharged air. In this study, the measurements on the age of air and the air change effectiveness, using the tracer gas method, are carried out to analyze the ventilation performance for provision of fresh air near the breathing zone by the PEM. The relations between the PEM for optimal control and other factors related to indoor air quality, and the ventilation for the PEM are examined. Also, three different supply diffuser types(desktop, floor and ceiling) are compared in view of their ability to distribute supply air to the workstation breathing zone. The desktop diffuser type could deliver air directly to the occupants breathing zone with a high degree of effectiveness. The minimum local age of air was measured in the breathing zone, which is directly supplied with air from the PEM diffusers, and the measured local air change effectiveness of the desktop diffuser in the breathing zone was about 1.13 to 1.23 times greater than that of the ceiling and floor diffusers. When the minimum outside air change rate as specified using ASHRAE Standard 62R is supplied with a desktop diffuser type, the volume of outside air can be reduced 13 to 23%, resulting in a commensurate in ventilation energy use.

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    바닥취출 공조공간에서 급기온도 및 급기풍속이 환기효율에 미치는 영향 (Effect of supply air temperature and airflow rate on ventilation effectiveness in an underfloor air conditioning space)

    • 정광섭;한화택;홍승재
      • 설비공학논문집
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      • 제10권5호
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      • pp.640-648
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      • 1998
    • A numerical study has been conducted to investigate the effect of inflow supply air temperature and velocity on ventilation effectiveness in an underfloor air conditioning space. A low Reynolds number k-$\varepsilon$ model is implemented to calculate steady state turbulent velocity distributions. A step-down injection method is used to calculate local and room mean ages from transient concentrations based on the concept of the age of air. Results show that there is a significant effect of Archimedes number on ventilation effectiveness especially for cooling conditions. Reynolds number shows relatively minor effect on velocity distribution and ventilation effectiveness especially for isothermal and heating conditions. It can be concluded that underfloor air conditioning system provides good ventilation characteristics for cooling conditions because of temperature stratification in the space.

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    유해물질 및 공업용 분진 제거를 위한 산업용 후드 개선에 관한 연구 (A Study on Improvement of Industrial Hood in Ventilation System for Elimination of Harmful Material and Dust)

    • 김영선;오율권
      • 설비공학논문집
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      • 제20권4호
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      • pp.238-244
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      • 2008
    • This study investigates on the improvement of inhalation effect of hood which attached new device named as "gas-guide-device" in local exhaust ventilation system for the effective elimination of harmful material and dust in manufacturing factory. The gas-guide-device having a diamond shape is composed of width (b) and two sides of a device (X, Y) and its size is selected the industrial hood under application in manufacturing factory after due consideration. In order to investigate the effect of gas-guide-device, numerical and experimental study is performed that the flow velocity is calculated and is measured by a commercial program "COMSOL $Multiphysics^{TM}$" and a hot wire type of anemometer, respectively. The numerical and experimental results are revealed is a similar pattern and flow velocity has improved to hood attached gas-guide-device. Also, the numerical method and result is also verified the dependance. Moreover, the optimum shape and size of gas-guide-device is revealed that the width (b) and the ratio of two sides of gas-guide-device (X, Y) has 125mm and 4 to 6.

    지하 수처리시설 유지관리층 환기설비의 성능평가 (Evaluation of the Ventilation Efficiency in an Underground Sewage Disposal Plant)

    • 강한기;이재헌
      • 설비공학논문집
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      • 제19권10호
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      • pp.695-702
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      • 2007
    • In this paper, the ventilation efficiencies of an underground sewage disposal plant were investigated for ventilating system without fan, ventilating system with eleven cross flow fans and ventilating system with sixteen cross flow fans by numerical method. It has been found that the air change effectiveness of the system without fan was predicted 0.44. It means that an additional ventilating equipment is needed to maintain good indoor air quality. For the ventilating system with sixteen cross flow fans, the air change effectiveness was predicted 0.55. The air change effectiveness of the ventilating system with eleven cross flow fans was predicted 0.51. It is known that the air change effectiveness above 0.5 is enough to eliminate pollutant and bad smell in the indoor. Therefore, it is recommended to select the ventilating system with eleven cross flow fans for the underground sewage disposal plant in an economic point of view.

    장대 광산갱도내 풍관 접속 통기선풍기 최적 설치 방안연구 - 벽면과 풍관간의 이격거리 중심으로 (A Study on the Optimal Installation of Ducted Fan Ventilation System in Long Mine Airways - Focused on the Wall Separation Distance and the Gap Length between Ducts)

    • 이창우;응우엔반득
      • 터널과지하공간
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      • 제27권1호
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      • pp.12-25
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      • 2017
    • 국내 석회석광산은 주로 자연통기에 의존하고 있으나 자본 및 운전비용이 과다하게 소요되는 광산 전체통기방법보다 풍관과 선풍기를 이용한 국부통기방법이 바람직한 방법으로 평가된다. 국내 대단면 장대 광산갱도에 풍관이 접속된 국부선풍기를 직렬로 연결 설치하는 경우에 통기시스템의 경제성과 효율의 최적화가 반드시 요구된다. 최적화를 위한 가장 중요한 두가지의 설계변수는 벽면 이격거리와 풍관 간의 이격거리이다. 본 연구에서는 경제적 및 환경적으로 최적화된, 즉 풍관간의 이격 공간을 통한 압력손실, 누기 그리고 오염된 공기의 재유입을 최소화할 수 있는 두 설계변수 값을 도출하기 위하여 광범위한 CFD분석을 시행하였다. 기존 연구결과와 권고기준들을 고려하여 이들 변수의 연구대상 범위를 선정하였다. 본 연구의 궁극적 목표는 국내 장대 광산갱도내 설치되는 풍관 접속 선풍기의 직렬연결 국부통기시스템의 최적화를 통하여 깨끗하고 안전한 작업장 환경을 제공하기 위함이다.

    주택용 환기시스템의 덕트설계를 위한 분배기 적용성 검토 (A Study on Application of Distributor for Duct Design at House Ventilation System)

    • 이정재;최석용;김석근;김광현;이영우;김환용
      • 설비공학논문집
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      • 제19권11호
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      • pp.770-775
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      • 2007
    • Although these days application of heat recovery ventilation and improved kitchen ventilation system came into wide use in mixed-use residential buildings and exclusive residences, there are not enough ventilation systems except the local ventilation of kitchens and rest rooms. It is very important part to regulate and distribute correct air flow rate for controlling air change rate. The purpose of this study is to investigate the application of distributor at house ventilation system by comparing a duct system with out distributor and with distributor. The results of this study are as follows. (1) When using distributor though the size of duct diameter is reduced rapidly, the pressure loss doesn't rise largely. The pressure loss without distributor is 4.08 mmAq, the pressure loss with distributor 4.10 mmAq. (2) To use distributor can reduce materials of duct and secure enough ceiling space by reducing duct diameter. (3) Diameters and air flow paths of distributor on the design stage are important part for accurate air flow rate.

    중.소규모 사업장의 국소배기장치 설치 실태와 문제점 및 개선방안 (Additional Improvement and Evaluation of Exhaust Ventilation Systems at Small and Medium Sized Enterprise)

    • 임성근;박두용;김원기;김수근
      • 한국산업보건학회지
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      • 제20권1호
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      • pp.1-9
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      • 2010
    • Objectives : The purposes of this study were to evaluate exhaust ventilation systems(EVSs) and to suggest problems and improvements. Methods : For 50 small and medium-sized enterprises, we carried out evaluation of EVSs. We evaluated hoods with smoke tester and measurement of capture velocity. In addition, we used several indicators for performance evaluation designed in this study. Results : 1. Based on the smoke flow pattern and the criteria of occupational health and safety act, 67.8% of hoods were rated 'good' level at smoke test whereas 26.3% were rated 'good' level at measurement of capture velocity. 2. 29.3% of hoods, of which ratio of measured actual air flow at hood(Qah) to required ideal exhaust air flow at hood(Qih) was 1 or more, were rated 'good' level. 3. The % of EVS, of which ratio of measured actual air flow at stack(Qast) to total required ideal exhaust air flow at hood(Qith) was 1 or more, was 29.0%. 4. For the ratio of measured Qast to existing air flow at fan(Qfan), only 5% of EVSs were 1 or more and 26.0% were 0.8 or more but less than 1.0. 5. For the ratio of measured Qast to total measured actual exhaust air flow at hood(Qath), 74.0% were 0.8 or more but less than 1.0. 6. The percentage of EVS, of which ratio of total measured Qath to existing Qfan was 0.8 or more, was 19.0%. 7. The percentage of EVS, of which ratio of total measured Qath to total required ideal exhaust Qith was 1 or more, was 26.0%. 8. For the comprehensive evaluation indicators designed in this study, 29.0% were 0.8 or more. Conclusions : We found that few exhaust local ventilations at small and medium-sized enterprises were rated 'good' level and that most exhaust local ventilations had 'poor' design and installation. Therefore, relevant professional manpower and enterprises have to construct exhaust local ventilation where it is needed, and technical guidance and economic support are needed to improve 'poor' exhaust local ventilation after self-evaluation.